International Journal of Advanced Information and Communication Technology


Study of Tree Multiplier using Reversible Logic Gate

Minu Motaghare, Shubhangini Ugale, GHRAET, RTMN University, Nagpur, India.

DOI : 01.0401/ijaict.2014.07.29

International Journal of Advanced Information and Communication Technology

Received On : January 10, 2017

Revised On : February 15, 2017

Accepted On : March 13, 2017

Published On : April 05, 2017

Volume 04, Issue 04

Pages : 647-649

Abstract


Now A days reversible logic is used in various field and some of their applications are quantum computing, low power CMOS, DNA computing, nanotechnology, cryptography, digital signal processing (DSP), communication, computer graphics, quantum dot cellular automata. It is not possible to realize quantum computing without implementation of reversible logic. The reversible logic is designed with the significance to decrease depth of the circuits, the number of garbage outputs and quantum cost. This paper provides the basic reversible logic gates. These logic gates can be used for designing of more complex system having reversible circuits as a primitive component and which can execute more complicated operations using quantum computers. The basic building block of quantum computers is formed by reversible circuits because all quantum operations are reversible. The data relating to the primitive reversible gates which are available in literature and helps researches in designing higher complex computing circuits using reversible gates are represented by this paper.

Keywords


Reversible Logic Gate, Wallace Unsigned Multiplier, Reversible Circuit.

Cite this article


Minu Motaghare, Shubhangini Ugale, “Study of Tree Multiplier using Reversible Logic Gate” INTERNATIONAL JOURNAL OF ADVANCED INFORMATION AND COMMUNICATION TECHNOLOGY, pp.647-649, April 05, 2017.

Copyright


© 2017 Minu Motaghare, Shubhangini Ugale. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.